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机械拉伸通过巨噬细胞的交替激活诱导成骨。

Mechanical stretch induces osteogenesis through the alternative activation of macrophages.

机构信息

Key Laboratory of Biorheological Science and Technology, Ministry of Education, Bioengineering College, Chongqing University, Chongqing, China.

Department of Anesthesiology, West China Hospital, Sichuan University, Chengdu, Sichuan, China.

出版信息

J Cell Physiol. 2021 Sep;236(9):6376-6390. doi: 10.1002/jcp.30312. Epub 2021 Feb 26.

DOI:10.1002/jcp.30312
PMID:33634492
Abstract

For reconstructive surgeons, critically skeletal damage represents a major challenge. Growing evidence indicate that bone repair is dynamically regulated by the mesenchymal stem cell (MSC)-macrophage interaction. Mechanical strain plays a fundamental role in bone repair and regeneration by influencing MSCs differentiation. Recently, a few findings indicate that macrophages may be mechanically sensitive and their phenotype can be regulated, in part, by mechanical cues. However, how macrophages subjected mechanical stretch influence the osteogenic differentiation of MSCs remain unclear. Thus, the purpose of this study is to explore the effect of macrophages stimulated with mechanical stretch on MSCs osteogenesis. By using a coculture system, we discover that macrophages efficiently induce osteogenic differentiation of MSCs under specific stretch conditions. A synergy mechanism between M2 polarization and YAP/BMP2 axis are identified through molecular and genetic analyses. Macrophages are activated by cyclic stretch and polarized to M2 phenotype that produce anti-inflammatory cytokines such as IL-10 and TGF-β to regulate the local inflammatory microenvironment. Furthermore, mechanical stretch induces YAP activation and nuclear translocation, subsequently regulates downstream BMP2 expression to facilitate MSCs osteogenesis. These findings not only advance our understanding of the complex influence among the mechanical strain, macrophage inflammatory response as well as the osteogenic differentiation of MSCs, but also reveal a control system from mechanical signals to chemical response then to cell behaviors during bone repair and regeneration.

摘要

对于重建外科医生来说,严重的骨骼损伤是一个主要挑战。越来越多的证据表明,骨修复是由间充质干细胞(MSC)-巨噬细胞相互作用动态调节的。机械应变通过影响 MSC 分化在骨修复和再生中起着基本作用。最近,一些发现表明巨噬细胞可能对机械敏感,其表型可以部分通过机械线索来调节。然而,机械拉伸的巨噬细胞如何影响 MSC 的成骨分化尚不清楚。因此,本研究旨在探讨机械拉伸刺激的巨噬细胞对 MSC 成骨的影响。通过使用共培养系统,我们发现巨噬细胞在特定的拉伸条件下能够有效地诱导 MSC 的成骨分化。通过分子和遗传分析,确定了 M2 极化和 YAP/BMP2 轴之间的协同机制。巨噬细胞被循环拉伸激活并极化到 M2 表型,产生抗炎细胞因子,如 IL-10 和 TGF-β,以调节局部炎症微环境。此外,机械拉伸诱导 YAP 激活和核转位,随后调节下游 BMP2 表达,促进 MSC 的成骨分化。这些发现不仅加深了我们对机械应变、巨噬细胞炎症反应以及 MSC 成骨分化之间复杂影响的理解,还揭示了在骨修复和再生过程中从机械信号到化学反应再到细胞行为的控制系统。

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